Gel Diffusiophoresis of a Spherical Colloidal Particle

Author:

Ohshima Hiroyuki1ORCID

Affiliation:

1. Faculty of Pharmaceutical Sciences, Tokyo University of Science, 2641 Yamazaki, Noda 278-8510, Chiba, Japan

Abstract

A theoretical framework is established for the gel diffusiophoresis of a spherical colloidal particle moving through an uncharged dilute porous polymer gel medium when an electrolyte concentration gradient field is applied. The network of cross-linked polymer segments is treated as a porous skeleton containing an electrolyte solution using the Brinkman–Debye–Bueche model. We derive a general expression for the gel-diffusiophoretic mobility of a charged spherical colloidal particle. Based on this general mobility expression, we farther derive a closed-form approximate expression for the gel-diffusiophoretic mobility of a weakly charged spherical particle correct to the second order of the particle’s zeta potential. The obtained mobility expression depends on the Debye–Hückel parameter and the Brinkmann parameter.

Publisher

MDPI AG

Reference50 articles.

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3. Derjaguin, B.V. (1989). Theory of Stability of Colloids and Thin Films, Springer.

4. Lyklema, J. (1995). Fundamentals of Interface and Colloid Science, Solid-Liquid Interfaces, Elsevier.

5. Tadros, T.F. (2007). Colloid Stability. The Role of Surface Forces—Part 1, Wiley-VCH.

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